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[tomato.git] / release / src-rt-6.x.4708 / linux / linux-2.6.36 / sound / pcmcia / pdaudiocf / pdaudiocf.h
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1 /*
2 * Driver for Sound Cors PDAudioCF soundcard
4 * Copyright (c) 2003 by Jaroslav Kysela <perex@perex.cz>
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, write to the Free Software
18 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
21 #ifndef __PDAUDIOCF_H
22 #define __PDAUDIOCF_H
24 #include <sound/pcm.h>
25 #include <asm/io.h>
26 #include <linux/interrupt.h>
27 #include <pcmcia/cs.h>
28 #include <pcmcia/cistpl.h>
29 #include <pcmcia/ds.h>
31 #include <sound/ak4117.h>
33 /* PDAUDIOCF registers */
34 #define PDAUDIOCF_REG_MD 0x00 /* music data, R/O */
35 #define PDAUDIOCF_REG_WDP 0x02 /* write data pointer / 2, R/O */
36 #define PDAUDIOCF_REG_RDP 0x04 /* read data pointer / 2, R/O */
37 #define PDAUDIOCF_REG_TCR 0x06 /* test control register W/O */
38 #define PDAUDIOCF_REG_SCR 0x08 /* status and control, R/W (see bit description) */
39 #define PDAUDIOCF_REG_ISR 0x0a /* interrupt status, R/O */
40 #define PDAUDIOCF_REG_IER 0x0c /* interrupt enable, R/W */
41 #define PDAUDIOCF_REG_AK_IFR 0x0e /* AK interface register, R/W */
43 /* PDAUDIOCF_REG_TCR */
44 #define PDAUDIOCF_ELIMAKMBIT (1<<0) /* simulate AKM music data */
45 #define PDAUDIOCF_TESTDATASEL (1<<1) /* test data selection, 0 = 0x55, 1 = pseudo-random */
47 /* PDAUDIOCF_REG_SCR */
48 #define PDAUDIOCF_AK_SBP (1<<0) /* serial port busy flag */
49 #define PDAUDIOCF_RST (1<<2) /* FPGA, AKM + SRAM buffer reset */
50 #define PDAUDIOCF_PDN (1<<3) /* power down bit */
51 #define PDAUDIOCF_CLKDIV0 (1<<4) /* choose 24.576Mhz clock divided by 1,2,3 or 4 */
52 #define PDAUDIOCF_CLKDIV1 (1<<5)
53 #define PDAUDIOCF_RECORD (1<<6) /* start capturing to SRAM */
54 #define PDAUDIOCF_AK_SDD (1<<7) /* music data detected */
55 #define PDAUDIOCF_RED_LED_OFF (1<<8) /* red LED off override */
56 #define PDAUDIOCF_BLUE_LED_OFF (1<<9) /* blue LED off override */
57 #define PDAUDIOCF_DATAFMT0 (1<<10) /* data format bits: 00 = 16-bit, 01 = 18-bit */
58 #define PDAUDIOCF_DATAFMT1 (1<<11) /* 10 = 20-bit, 11 = 24-bit, all right justified */
59 #define PDAUDIOCF_FPGAREV(x) ((x>>12)&0x0f) /* FPGA revision */
61 /* PDAUDIOCF_REG_ISR */
62 #define PDAUDIOCF_IRQLVL (1<<0) /* Buffer level IRQ */
63 #define PDAUDIOCF_IRQOVR (1<<1) /* Overrun IRQ */
64 #define PDAUDIOCF_IRQAKM (1<<2) /* AKM IRQ */
66 /* PDAUDIOCF_REG_IER */
67 #define PDAUDIOCF_IRQLVLEN0 (1<<0) /* fill threshold levels; 00 = none, 01 = 1/8th of buffer */
68 #define PDAUDIOCF_IRQLVLEN1 (1<<1) /* 10 = 1/4th of buffer, 11 = 1/2th of buffer */
69 #define PDAUDIOCF_IRQOVREN (1<<2) /* enable overrun IRQ */
70 #define PDAUDIOCF_IRQAKMEN (1<<3) /* enable AKM IRQ */
71 #define PDAUDIOCF_BLUEDUTY0 (1<<8) /* blue LED duty cycle; 00 = 100%, 01 = 50% */
72 #define PDAUDIOCF_BLUEDUTY1 (1<<9) /* 02 = 25%, 11 = 12% */
73 #define PDAUDIOCF_REDDUTY0 (1<<10) /* red LED duty cycle; 00 = 100%, 01 = 50% */
74 #define PDAUDIOCF_REDDUTY1 (1<<11) /* 02 = 25%, 11 = 12% */
75 #define PDAUDIOCF_BLUESDD (1<<12) /* blue LED against SDD bit */
76 #define PDAUDIOCF_BLUEMODULATE (1<<13) /* save power when 100% duty cycle selected */
77 #define PDAUDIOCF_REDMODULATE (1<<14) /* save power when 100% duty cycle selected */
78 #define PDAUDIOCF_HALFRATE (1<<15) /* slow both LED blinks by half (also spdif detect rate) */
80 /* chip status */
81 #define PDAUDIOCF_STAT_IS_STALE (1<<0)
82 #define PDAUDIOCF_STAT_IS_CONFIGURED (1<<1)
83 #define PDAUDIOCF_STAT_IS_SUSPENDED (1<<2)
85 struct snd_pdacf {
86 struct snd_card *card;
87 int index;
89 unsigned long port;
90 int irq;
92 spinlock_t reg_lock;
93 unsigned short regmap[8];
94 unsigned short suspend_reg_scr;
95 struct tasklet_struct tq;
97 spinlock_t ak4117_lock;
98 struct ak4117 *ak4117;
100 unsigned int chip_status;
102 struct snd_pcm *pcm;
103 struct snd_pcm_substream *pcm_substream;
104 unsigned int pcm_running: 1;
105 unsigned int pcm_channels;
106 unsigned int pcm_swab;
107 unsigned int pcm_little;
108 unsigned int pcm_frame;
109 unsigned int pcm_sample;
110 unsigned int pcm_xor;
111 unsigned int pcm_size;
112 unsigned int pcm_period;
113 unsigned int pcm_tdone;
114 unsigned int pcm_hwptr;
115 void *pcm_area;
117 /* pcmcia stuff */
118 struct pcmcia_device *p_dev;
121 static inline void pdacf_reg_write(struct snd_pdacf *chip, unsigned char reg, unsigned short val)
123 outw(chip->regmap[reg>>1] = val, chip->port + reg);
126 static inline unsigned short pdacf_reg_read(struct snd_pdacf *chip, unsigned char reg)
128 return inw(chip->port + reg);
131 struct snd_pdacf *snd_pdacf_create(struct snd_card *card);
132 int snd_pdacf_ak4117_create(struct snd_pdacf *pdacf);
133 void snd_pdacf_powerdown(struct snd_pdacf *chip);
134 #ifdef CONFIG_PM
135 int snd_pdacf_suspend(struct snd_pdacf *chip, pm_message_t state);
136 int snd_pdacf_resume(struct snd_pdacf *chip);
137 #endif
138 int snd_pdacf_pcm_new(struct snd_pdacf *chip);
139 irqreturn_t pdacf_interrupt(int irq, void *dev);
140 void pdacf_tasklet(unsigned long private_data);
141 void pdacf_reinit(struct snd_pdacf *chip, int resume);
143 #endif /* __PDAUDIOCF_H */